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Comparative Assessment of Injection Strategies for Highly Concentrated Nano Fe/Cu Particles into Sand Columns

机译:高浓度纳米Fe / Cu颗粒向砂柱注入策略的比较评估

摘要

The transport of bimetallic nano-Fe/Cu particles through coarse sand-packed columns was investigatedsimulating particle transport under 25 injection strategy scenarios. The considered transport mechanisms included retention on and release from the solid grains, modeled by a dual-site advection-dispersion-deposition equation, and clogging of the porous medium. The transport kinetics and parameters used in this study were calibrated against experimental data, previously reported, and simulated using E-MNM1D. The influence of the injected particle concentration(2 to 12 g/l), flow rate (43.2 to 172.8 m/d), duration,and eventual alternation of injection and flushing periods was analyzed. The impact of each scenario was quantified in terms of particle mobility, porous medium clogging, water pressure, and uniformity of distribution of the particles in the porous medium.The results of this study indicate that, when injecting under conditions typical of a full-scale aquifer remediation, nanoparticle mobility and distribution are optimized and clogging is minimized by using high flow rates, low concentrations, and frequent injection steps without intermediate flushing
机译:研究了双金属纳米Fe / Cu颗粒通过粗砂填充柱的传输,模拟了25种注入策略方案下的颗粒传输。所考虑的传输机制包括通过双点对流-扩散-沉积方程建模的固形物上的固着和释放,以及多孔介质的堵塞。对照先前报道的实验数据对本研究中使用的传输动力学和参数进行了校准,并使用E-MNM1D进行了模拟。分析了注入颗粒浓度(2至12 g / l),流速(43.2至172.8 m / d),持续时间以及最终注入和冲洗时间交替的影响。根据颗粒迁移率,多孔介质堵塞,水压和颗粒在多孔介质中分布的均匀性来量化每种情况的影响。这项研究的结果表明,在典型的全尺寸条件下进样时通过使用高流速,低浓度和频繁的注入步骤而无需中间冲洗,可以优化含水层的修复,纳米颗粒的迁移和分布,并最大限度地减少堵塞

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